Paper
25 September 2023 Operation control strategy of the wind-solar-diesel-storage microgrid system based on multi-energy complementation
Dajun Wei, Weimin Li
Author Affiliations +
Abstract
Renewable energy will have unprecedented development opportunities with the implementation of Emission peak and Carbon neutrality strategy, while promoting the consumption of renewable energy also face huge challenges. Thus, microgrid is known as an important solution of distributed renewable energy consume. This paper firstly designs a multienergy complementary microgrid system composed of wind power, photovoltaic, diesel generators, energy storage batteries, a wind-solar-diesel-storage microgrid simulation model has been established. Secondly, an operation control strategy suitable for the independent microgrid is proposed for priority utilization of renewable energy. According to variations of wind turbine and photovoltaic output power, the operation mode of the microgrid is adjusted through the energy storage system in order to fully consumption of the renewable energy, while the user demand could be satisfied. Finally, a multi-energy complementary microgrid system simulation model is built based on the TRNSYS platform, which verify the effectiveness and feasibility of the control strategy, provides theoretical and methodological support for the consumption of distributed renewable energy in the future.
(2023) Published by SPIE. Downloading of the abstract is permitted for personal use only.
Dajun Wei and Weimin Li "Operation control strategy of the wind-solar-diesel-storage microgrid system based on multi-energy complementation", Proc. SPIE 12788, Second International Conference on Energy, Power, and Electrical Technology (ICEPET 2023), 127880B (25 September 2023); https://doi.org/10.1117/12.3004695
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KEYWORDS
Renewable energy

Batteries

Solar energy

Wind energy

Control systems

Wind speed

Photovoltaics

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